Publications
Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"
A Coarse-Grained Model of Unstructured Single-Stranded DNA Derived from Atomistic Simulation and Single-Molecule Experiment." Journal of Chemical Theory and Computation 10:2891-2896 (2014).
Supporting information (3.38 MB)
"